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Alternative transcription initiation leads to expression of a novel ALK isoform in cancer.

Authors :
Wiesner, Thomas
Lee, William
Obenauf, Anna C.
Ran, Leili
Murali, Rajmohan
Zhang, Qi Fan
Wong, Elissa W. P.
Hu, Wenhuo
Scott, Sasinya N.
Shah, Ronak H.
Landa, Iñigo
Button, Julia
Lailler, Nathalie
Sboner, Andrea
Gao, Dong
Murphy, Devan A.
Cao, Zhen
Shukla, Shipra
Hollmann, Travis J.
Wang, Lu
Source :
Nature. 10/15/2015, Vol. 526 Issue 7573, p453-457. 5p. 2 Diagrams, 1 Chart, 11 Graphs.
Publication Year :
2015

Abstract

Activation of oncogenes by mechanisms other than genetic aberrations such as mutations, translocations, or amplifications is largely undefined. Here we report a novel isoform of the anaplastic lymphoma kinase (ALK) that is expressed in ∼11% of melanomas and sporadically in other human cancer types, but not in normal tissues. The novel ALK transcript initiates from a de novo alternative transcription initiation (ATI) site in ALK intron 19, and was termed ALKATI. In ALKATI-expressing tumours, the ATI site is enriched for H3K4me3 and RNA polymerase II, chromatin marks characteristic of active transcription initiation sites. ALKATI is expressed from both ALK alleles, and no recurrent genetic aberrations are found at the ALK locus, indicating that the transcriptional activation is independent of genetic aberrations at the ALK locus. The ALKATI transcript encodes three proteins with molecular weights of 61.1, 60.8 and 58.7 kilodaltons, consisting primarily of the intracellular tyrosine kinase domain. ALKATI stimulates multiple oncogenic signalling pathways, drives growth-factor-independent cell proliferation in vitro, and promotes tumorigenesis in vivo in mouse models. ALK inhibitors can suppress the kinase activity of ALKATI, suggesting that patients with ALKATI-expressing tumours may benefit from ALK inhibitors. Our findings suggest a novel mechanism of oncogene activation in cancer through de novo alternative transcription initiation. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00280836
Volume :
526
Issue :
7573
Database :
Academic Search Index
Journal :
Nature
Publication Type :
Academic Journal
Accession number :
110359627
Full Text :
https://doi.org/10.1038/nature15258